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Design methodology of resonant inductor in a ZVS inverter

机译:ZVS逆变器中谐振电感器的设计方法

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摘要

In a zero-voltage switching (ZVS) inverter, the resonant inductor is applied to realize soft-switching aimed at dynamic loss reduction. For this purpose, the loss on the resonant inductor should be low enough to ensure a distinct loss decrease for the total system. ZVS inverters usually operate at higher frequency than hard-switching inverters to allow sizing reduction of passive components. From this aspect, the resonant inductor in a relatively small dimension is required to guarantee the compactness of the whole inverter. This paper introduces a methodology incorporating new design rules for optimization and miniaturization of the resonant inductor in a ZVS inverter. High frequency winding losses as well as core loss generated by non-sinusoidal waveforms are discussed in this paper. Different winding schemes and positions are compared in order to find a design with minimized power dissipation. Finite Element Analysis (FEA) results show that the inductor designed by this method has minimum losses and optimum size.
机译:在零电压开关(ZVS)逆变器中,施加谐振电感器以实现旨在减少动态损耗的软切换。为此目的,谐振电感器上的损耗应足够低,以确保整个系统的不同损耗减少。 ZVS逆变器通常以更高的频率操作,而不是硬开关逆变器,以允许减少无源元件。从这个方面,需要在相对较小的尺寸中谐振电感器来保证整个逆变器的紧凑性。本文介绍了一种掺入新设计规则的方法,用于ZVS逆变器中谐振电感的优化和小型化。本文讨论了高频绕组损耗以及由非正弦波形产生的核心损耗。比较不同的绕组方案和位置,以找到具有最小化功耗的设计。有限元分析(FEA)结果表明,由该方法设计的电感器具有最小损耗和最佳尺寸。

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